What Is This? Symptoms Candidacy Treatments Request Consultation
Cerebrovascular/Skull Base Surgery/Endovascular Neurosurgery
Interactive Patient Education

Understanding
Cavernous Malformations

A cavernous malformation, or cavernoma, is a cluster of abnormal blood vessels that occasionally bleeds and slowly grows. Many are found by accident on a scan and never need treatment; some can cause seizures while others, especially in the brainstem, can be a source of recurring or accumulating symptoms.

What Is a Cavernous Malformation?

A cluster of leaky small blood vessels that grows slowly, mostly through repeated tiny bleeds that often go unnoticed.

A cavernous malformation (also called a cavernoma or cavernous angioma) is a cluster of abnormal, thin-walled blood vessels bunched together, often compared to a small berry or mulberry. Unlike the brain's normal arteries and veins, these channels lack a proper muscular wall, so instead of moving blood along under pressure, they tend to ooze. Most cavernomas leak tiny amounts of blood into their own tissue over and over across a lifetime, gradually building a rim of dark, iron-containing residue called hemosiderin around the lesion. It is this slow, largely silent accumulation, not one dramatic event, that is the hallmark of how these lesions grow and change.

Cavernomas can occur anywhere in the brain or spinal cord and are usually a lifelong, one-time finding (sporadic). In roughly one in five patients, though, they are familial: an inherited mutation in one of three known genes causes multiple cavernomas to form, sometimes dozens over a lifetime, and other family members may carry the same risk.

Because MRI is used so often now, for headaches, minor trauma, or a completely unrelated symptom, a growing share of cavernomas are discovered incidentally: an unexpected finding on a scan ordered for something else entirely. Finding one does not automatically mean anything needs to be done about it. Your neurosurgery team will weigh the lesion's location and whether its causing symptoms to recommend watchful waiting, microsurgical removal, or, for deep or higher-risk locations, minimally invasive laser ablation (LITT).

Key Facts
Prevalence: About 1 in 200 people (~0.5%)
Found incidentally: Roughly 1 in 5 cavernomas are discovered on a scan done for another reason
Sporadic vs. familial: About 80% single, sporadic lesions; ~20% familial (multiple lesions, inherited)
Best seen on: MRI with GRE or SWI sequences; often invisible on CT or catheter angiography
Most common symptom: Seizure, when a lesion sits in the cerebral cortex

Where It Forms, What It Causes

Cavernomas can form almost anywhere in the brain or spinal cord, and where one sits shapes a patient's experience more than almost any other factor. Select a brain region to see the typical symptoms associated with each location and the neurologic risk from bleeding.

Why Some Cavernomas Are Watched Rather Than Treated

The risk of symptomatic bleeding is low for most cavernomas. Once bleeding causes symptoms, treatment becomes a greater consideration.

~0.5%/yr
Average annual risk of a first hemorrhage, for a cavernoma that has never bled before
Higher risk
of re-bleed in the year immediately following a first symptomatic hemorrhage
Declines
over time
If no further bleeding occurs, risk gradually settles back toward baseline over subsequent years

A Note on These Numbers

Bleeding-risk statistics like these come from studies that count bleeds doctors were able to detect and diagnose. A tiny bleed in a crowded, sensitive area like the brainstem is far more likely to cause an obvious symptom, get imaged, and get counted than the same-sized bleed somewhere quieter, which might cause no symptoms at all and go unnoticed. The same issue applies to rebleeding: once a cavernoma has been diagnosed, patients are usually watched more closely with follow-up scans, so a second bleed is more likely to be caught than the first one was. None of this means the patterns on this page aren't real. Most researchers believe genuine differences in risk by location, and after a first bleed, do exist. But the exact numbers are harder to pin down than a single percentage suggests, which is part of why you may hear somewhat different figures from different providers. The broad pattern holds regardless: an unbled, incidentally found cavernoma is usually low risk, and one that has already caused a bleed, especially with symptoms, deserves closer attention.

First Bleed vs. Rebleed

Cavernomas that has never bled and are causing no symptoms carry a relatively lower annual hemorrhage risk, on the order of 0.5% per year across most locations. But once a cavernoma has bled once, the risk of a second bleed rises for the following year or two before gradually falling back toward its original baseline if no further bleeding occurs. Some of that apparent rise is likely inflated by closer monitoring after a diagnosis, which makes a second bleed more likely to be caught than the first one was, but most researchers believe a real, biological increase in risk exists too. This is why a prior hemorrhage, the resulting symptoms, and location, shape the recommendation for surgery.

Familial Cavernous Malformation

About one in five patients has the inherited, familial form, caused by a mutation in one of three known genes (CCM1/KRIT1, CCM2, or CCM3/PDCD10). Patients with the familial form typically develop multiple cavernomas, sometimes dozens, that can continue to appear over a lifetime rather than a single fixed lesion. When a familial pattern is suspected, most often because of multiple lesions on imaging or a family history, your team will often coordinate genetic counseling and screening for at-risk relatives.

Am I a Candidate for Treatment?

No single factor decides this alone. Explore the considerations that go into the recommendation below.

Your Treatment Options

Watchful waiting, microsurgical resection, and laser ablation (LITT) each fit a different clinical picture.

Watchful waiting Watchful Waiting
Microsurgical resection Microsurgical Resection
Laser ablation (LITT) Laser Ablation (LITT)

Click an icon to highlight that option's column in the tables below.

Watchful WaitingMicrosurgical ResectionLaser Ablation (LITT)
What it isNo procedure; regular MRI follow-up and symptom monitoringOpen surgery through a small window in the skull to remove the entire cavernomaA thin laser fiber, guided into the cavernoma through a tiny hole in the skull, heats and destroys it from within
InvasivenessNoneOpen cranial surgeryMinimally invasive; a single probe track roughly the width of a pencil lead
AnesthesiaNoneGeneralGeneral
Typical hospital stayNone3–5 daysUsually one night
Watchful WaitingMicrosurgical ResectionLaser Ablation (LITT)
Best forAsymptomatic, incidentally found lesions, especially in the cerebral lobes; any lesion where the estimated surgical risk outweighs its natural bleeding riskA lesion that has bled and caused symptoms, especially one that is superficial or reachable without crossing critical brain tissue; medication-resistant seizures traced to a lobar cavernomaDeep or eloquent lesions, including selected brainstem and thalamic cavernomas, where a traditional surgical corridor would risk more collateral injury than a single thin probe track
Watchful WaitingMicrosurgical ResectionLaser Ablation (LITT)
What to expectRequires periodic MRI on an individualized schedule; no recovery time, but the lesion and its risk remain in placeComplete removal, including the hemosiderin rim when treating seizures, essentially eliminates future bleeding risk from that specific lesion; recovery is measured in weeksRecovery from a laser procedure is typically a few days to a week or two

How It Works — Step by Step

Select each step to learn what happens and why. Toggle between microsurgical resection and laser ablation.

What Outcomes Can Patients Expect?

Evidence-based outcomes drawn from published microsurgical and laser series.

70–90%
Seizure freedom after complete resection of a seizure-causing lobar cavernoma, including its hemosiderin rim
88%
Seizure freedom reported after laser ablation (LITT) in published series
~74%
Average shrinkage in treated lesion volume in the months following LITT

Risks and Side Effects

Every option carries some risk. Watchful waiting carries the ongoing, if usually low, risk of a future bleed from the lesion left in place. Microsurgical resection carries the general risks of any brain operation, including infection and bleeding, plus the possibility of a new or worsened neurological deficit that is temporary in most patients but can occasionally be permanent, with that risk rising for deeper and brainstem locations. Laser ablation avoids an open incision, but it is not risk-free either: roughly 1 in 7 patients experience a new neurological symptom immediately afterward, most of which resolve; and because the lesion is destroyed rather than removed, there have been rare reports of delayed swelling around the treated area in the weeks that follow. Your surgical team will walk through the specific risks that apply to your lesion's size, location, and your own health before any decision is made.

Common Questions

My cavernoma was found by accident on a scan for something else. Do I need surgery?
Usually not right away. Most incidentally found cavernomas, especially in the cerebral lobes, are safely watched with periodic MRI rather than treated, since the natural risk of that lesion causing a problem is often lower than the risk of an operation to remove it. Location, and whether it has ever bled, matter more than the fact that it was found by accident.
What's the chance mine will bleed?
It depends heavily on location and history. A cavernoma that has never bled carries roughly a 0.5% annual risk of a first hemorrhage across most locations. Brainstem cavernomas are widely reported as higher risk, though part of that reported difference may reflect how much more likely a brainstem bleed is to cause obvious symptoms and get diagnosed, rather than a true difference in how often bleeding happens. Once a cavernoma has bled, the risk of a second bleed in the following year does rise, though closer monitoring after a diagnosis can make that second bleed more likely to be caught, so the exact size of the increase is somewhat uncertain. Your care team can walk through what's well established and what's less certain for your specific situation.
Is this genetic? Should my family be tested?
About one in five cavernomas are the inherited, familial form, caused by a mutation in one of three known genes, and typically produce multiple lesions rather than one. If imaging shows more than one cavernoma, or there is a family history, genetic counseling and screening for close relatives is worth discussing with your care team.
What is LITT, and how is it different from regular surgery?
Laser interstitial thermal therapy (LITT) uses a thin laser fiber, guided through a small hole in the skull, to heat and destroy the cavernoma from within while you're inside an MRI scanner that shows the heated zone in real time. There is no open craniotomy and no tissue is physically removed; instead, the destroyed lesion is gradually reabsorbed by the body over the following months. It is generally reserved for deep or hard-to-reach lesions where standard surgery would carry more risk.
Will removing it stop my seizures?
Most patients treated for a seizure-causing cavernoma become seizure-free, particularly when the surrounding hemosiderin-stained tissue is removed along with the lesion itself, since that irritated rim can keep triggering seizures even after the cavernoma is gone. Some patients continue to need medication afterward, at least for a period of time.
What happens if my cavernoma is in the brainstem?
The brainstem is widely reported as the location with the highest bleeding risk, and the decision between watching and treating is most difficult here. Part of that reported risk likely reflects the anatomy, because so many critical pathways packed into so little space, so that a brainstem bleed, even a small one, is far more likely to cause an obvious symptom and get diagnosed than a similarly sized bleed elsewhere, which can inflate how risky the location appears in research. Even accounting for that, a cavernoma that has already bled and reaches close enough to the surface to be approached through a known "safe entry zone" is often the strongest case for surgery, because repeated bleeding here tends to cause lasting harm. Laser ablation is increasingly used here specifically to avoid a wide surgical corridor through crowded brainstem tissue.
Can a cavernous malformation come back after it's removed?
Once a cavernoma is completely removed, that specific lesion cannot regrow; it isn't a tumor that regenerates. If you have the familial form, though, new cavernomas can appear elsewhere in the brain or spine over time, which is why family members with the familial form are often followed with periodic MRI even without symptoms.
How long does recovery take?
It depends on which path you take. If you have surgery, laser ablation typically allows discharge the same day or the following morning, with a return to most normal activity within days to a couple of weeks. Microsurgical resection generally involves a hospital stay of several days and a recovery measured in weeks, shaped further by which part of the brain was involved.

Meet the Team

Brown Neurosurgery's Cerebrovascular Surgery and Endovascular Neurosurgery team evaluates every cavernous malformation individually, offering both open microsurgical and minimally invasive treatment.

What Is This? Where It Forms Am I a Candidate? Treatment Options How It Works Outcomes FAQ